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Regulation of Expression of the Paralogous Mlp Family in Borrelia burgdorferi

机译:伯氏疏螺旋体中同源lpp家族的表达调控。

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摘要

The Mlp (multicopy lipoproteins) family is one of many paralogous protein families in Borrelia burgdorferi. To examine the extent to which the 10 members of the Mlp family in B. burgdorferi strain 297 might be differentially regulated, antibodies specific for each of the Mlps were developed and used to analyze the protein expression profiles of individual Mlps when B. burgdorferi replicated under various cultivation conditions. All of the Mlps were upregulated coordinately when B. burgdorferi was cultivated at either elevated temperature, reduced culture pH, or increased spirochete cell density. Inasmuch as the expression of OspC is influenced by a novel RpoN-RpoS regulatory pathway, similar induction patterns for OspC and the Mlp paralogs prompted an assessment of whether the RpoN-RpoS pathway also was involved in Mlp expression. In contrast to wild-type B. burgdorferi, both RpoN- and RpoS-deficient mutants were unable to upregulate OspC or the Mlp paralogs when grown at lower pH (6.8), indicating that pH-mediated regulation of OspC and Mlp paralogs is dependent on the RpoN-RpoS pathway. However, when RpoN- or RpoS-deficient mutants were shifted from 23°C to 37°C or were cultivated to higher spirochete densities, some induction of the Mlps still occurred, whereas OspC expression was abolished. The combined findings suggest that the Mlp paralogs are coordinately regulated as a family and have an expression profile similar, but not identical, to that of OspC. Although Mlp expression as a family is influenced by the RpoN-RpoS regulatory pathway, there exists at least one additional layer of gene regulation, yet to be elucidated, contributing to Mlp expression in B. burgdorferi.
机译:Mlp(多拷贝脂蛋白)家族是伯氏疏螺旋体中许多旁源蛋白家族之一。为了检查B. burgdorferi菌株297中Mlp家族的10个成员可能受到的调控程度,开发了针对每种Mlp的抗体,并用于分析B. burgdorferi在以下条件下复制时单个Mlp的蛋白表达谱。各种栽培条件。在升高的温度,降低的培养液pH值或增加的螺旋藻细胞密度下培养B. burgdorferi时,所有Mlps均会协同上调。由于OspC的表达受新型RpoN-RpoS调控途径的影响,因此OspC和Mlp旁系同源物的诱导方式相似,因此需要评估RpoN-RpoS途径是否也参与Mlp表达。与野生型伯氏疏螺旋体相反,当在较低pH(6.8)下生长时,RpoN和RpoS缺陷型突变体均不能上调OspC或Mlp旁系同源物,表明pH介导的OspC和Mlp旁系同源调控取决于RpoN-RpoS途径。但是,当RpoN或RpoS缺陷型突变体从23°C转移到37°C或培养到更高的螺环孢菌密度时,仍然发生了Mlps的一些诱导,而OspC的表达被取消了。合并的发现表明,Mlp旁系同源物作为一个家族被协调地调节,并且具有与OspC相似但不相同的表达谱。尽管Mlp作为一个家族的表达受RpoN-RpoS调控途径的影响,但至少还有一层基因调控尚待阐明,这有助于在伯氏疏螺旋体中表达Mlp。

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